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A novel multilayer model with controllable mechanical properties for magnesium-based bone plates
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  • 作者:Juncen Zhou (1)
    Wanru Huang (1)
    Qing Li (1)
    Zuxin She (1)
    Funan Chen (1)
    Longqin Li (1)

    1. School of Chemistry and Chemical Engineering
    ; Southwest University ; Chongqing ; 400715 ; China
  • 刊名:Journal of Materials Science Materials in Medicine
  • 出版年:2015
  • 出版时间:April 2015
  • 年:2015
  • 卷:26
  • 期:4
  • 全文大小:2,601 KB
  • 参考文献:1. Zreiqat, H, Howlett, CR, Zannettino, A, Evans, P, Schulze-Tanzil, G, Knabe, C (2002) Mechanisms of magnesium-stimulated adhesion of osteoblastic cells to commonly used orthopaedic implants. J Biomed Mater Res B. 62: pp. 175-184 CrossRef
    2. Yamasaki, Y, Yoshida, Y, Okazaki, M, Shimazu, A, Uchida, T, Kubo, T (2002) Synthesis of functionally graded MgCO3聽apatite accelerating osteoblast adhesion. J Biomed Mater Res B. 62: pp. 99-105 CrossRef
    3. Yamasaki, Y, Yoshida, Y, Okazaki, M, Shimazu, A, Kubo, T, Akagawa, Y (2003) Action of FGMgCO3Ap-collagen composite in promoting bone formation. Biomaterials 24: pp. 4913-4920 CrossRef
    4. Zhang, SX, Zhang, XN, Zhao, CL, Li, JN, Song, Y, Xie, CY (2010) Research on an Mg鈥揨n alloy as a degradable biomaterial. Acta Biomater 6: pp. 626-640 CrossRef
    5. Zhou, WR, Zheng, YF, Leeflang, MA, Zhou, J (2013) Mechanical property, biocorrosion and in vitro biocompatibility evaluations of Mg鈥揕i鈥?Al)鈥?RE) alloys for future cardiovascular stent application. Acta Biomater 9: pp. 8488-8498 CrossRef
    6. Lin, X, Tan, L, Zhang, Q, Yang, K, Hu, Z, Qiu, J, Cai, Y (2013) The in vitro degradation process and biocompatibility of a ZK60 magnesium alloy with a forsterite-containing micro-arc oxidation coating. Acta Biomater 9: pp. 8631-8642 CrossRef
    7. Gu, XN, Li, N, Zhou, WR, Zheng, YF, Zhao, X, Cai, QZ (2011) Corrosion resistance and surface biocompatibility of a microarc oxidation coating on a Mg鈥揅a alloy. Acta Biomater 7: pp. 1880-1889 CrossRef
    8. Hornberger, H, Virtanen, S, Boccaccini, AR (2012) Biomedical coatings on magnesium alloys鈥攁 review. Acta Biomater 8: pp. 2442-2455 CrossRef
    9. Staiger, MP, Pietak, AM, Huadmai, J, Dias, G (2006) Magnesium and its alloys as orthopedic biomaterials: a review. Biomaterials 27: pp. 1728-1734 CrossRef
    10. Kuhlmann, J, Bartsch, I, Willbold, E, Schuchardt, S, Holz, O, Hort, N, H枚che, D (2013) Fast escape of hydrogen from gas cavities around corroding magnesium implants. Acta Biomater 9: pp. 8714-8721 CrossRef
    11. Zhang, S, Zhang, X, Zhao, C, Li, J, Song, Y, Xie, C, Tao, H (2010) Research on an Mg-Zn alloy as a degradable biomaterial. Acta Biomater 6: pp. 626-640 CrossRef
    12. Harper, LT, Ahmed, I, Felfel, RM, Qian, C (2012) Finite element modelling of the flexural performance of resorbable phosphate glass fibre reinforced PLA composite bone plates. J Mech Behav Biomed. 15: pp. 13-23 CrossRef
    13. Evans, F (1973) Factors affecting the mechanical properties of bone. Bull N Y Acad Med 49: pp. 751-764
    14. An, Y, Draughn, RA (1999) Mechanical testing of bone and the bone鈥搃mplant interface. CRC Press, New York CrossRef
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    16. Head, WC, Bauk, DJ, Emerson, RH (1995) Titanium as the material of choice for cementless femoral components in total hip arthroplasty. Clin Orthop Relat Res. 311: pp. 85-90
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    18. Choudhary, L, Singh Raman, RK (2013) Mechanical integrity of magnesium alloys in a physiological environment: slow strain rate testing based study. Eng Fract Mech. 103: pp. 94-102 CrossRef
    19. Choudhary, L, Szmerling, J, Goldwasser, R (2011) Singh Raman RK, Investigations into stress corrosion cracking behaviour of AZ91D magnesium alloy in physiological environment. Proc Eng. 10: pp. 518-523 CrossRef
    20. Choudhary, L, Singh Raman, RK (2012) Magnesium alloys as body implants: fracture mechanism under dynamic and static loadings in a physiological environment. Acta Biomater 8: pp. 916-923 CrossRef
    21. Gu, XN, Zhou, WR, Zheng, YF, Cheng, Y, Wei, SC, Zhong, SP (2010) Corrosion fatigue behaviors of two biomedical Mg alloys鈥擜Z91D and WE43鈥擨n simulated body fluid. Acta Biomater 6: pp. 4605-4613 CrossRef
    22. Method for removal of corrosion products from corrosion test specimens of metals and alloys, ISO 8407:1991, London: ISO.
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    25. Kalb, H (2012) Rzany a, Hensel B. Impact of microgalvanic corrosion on the degradation morphology of WE43 and pure magnesium under exposure to simulated body fluid. Corros Sci 57: pp. 122-130 CrossRef
    26. Song, GL, Atrens, A (2003) Understanding magnesium corrosion鈥攁 framework for improved alloy performance. Adv Eng Mater. 5: pp. 837-858 CrossRef
    27. Xin, Y, Huo, K, Tao, H, Tang, G, Chu, PK (2008) Influence of aggressive ions on the degradation behavior of biomedical magnesium alloy in physiological environment. Acta Biomater 4: pp. 2008-2015 CrossRef
    28. Simaranov, A, Sokolova, I, Marshakov, A, Mikhailovskii, Y (1991) Corrosion- electrochemical behavior of magnesium in acidic media, containing oxidants. Prot Metal. 27: pp. 329-334
    29. Zong, Y, Yuan, GY, Zhang, XB, Mao, L, Niu, JL, Ding, WJ (2012) Comparison of biodegradable behaviors of AZ31 and Mg鈥揘d鈥揨n鈥揨r alloys in Hank鈥檚 physiological solution. Mater Sci Eng B 25: pp. 395-401 CrossRef
    30. Yang LJ, Wei YH, Hou LF, Zhang D. Corrosion behaviour of die-cast AZ91D magnesium alloy in aqueous sulphate solutions. Corros Sci. 2010; 52: 345鈥?1.
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Biomaterials
    Characterization and Evaluation Materials
    Polymer Sciences
    Metallic Materials
    Ceramics,Glass,Composites,Natural Materials
    Surfaces and Interfaces and Thin Films
  • 出版者:Springer Netherlands
  • ISSN:1573-4838
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